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Biotechnology and Bioengineering|July 26, 2006
Effect of compounds released during pretreatment of wheat straw on microbial growth and enzymatic hydrolysis ratesGianni Panagiotou, Lisbeth OlssonFEMS Yeast Research|October 22, 2014
Physiological response of Saccharomyces cerevisiae to weak acids present in lignocellulosic hydrolysateZhongpeng Guo, Lisbeth OlssonBiotechnology for Biofuels|April 10, 2014
Combined substrate, enzyme and yeast feed in simultaneous saccharification and fermentation allow bioethanol production from pretreated spruce biomass at high solids loadingsRakesh Koppram, Lisbeth OlssonFEMS Yeast Research|April 19, 2003
An expanded role for microbial physiology in metabolic engineering and functional genomics: moving towards systems biologyJens Nielsen, Lisbeth OlssonMicrobial Biotechnology|May 20, 2015
Influence of the propagation strategy for obtaining robust Saccharomyces cerevisiae cells that efficiently co-ferment xylose and glucose in lignocellulosic hydrolysatesElia Tomás-Pejó, Lisbeth OlssonFEMS Yeast Research|September 14, 2016
Physiological responses to acid stress by Saccharomyces cerevisiae when applying high initial cell densityZhong-Peng Guo, Lisbeth OlssonACS Synthetic Biology|August 8, 2023
ScEnSor Kit for Saccharomyces cerevisiae Engineering and Biosensor-Driven Investigation of the Intracellular EnvironmentLuca Torello Pianale, Lisbeth OlssonNature Biotechnology|July 10, 2019
Overcoming genetic heterogeneity in industrial fermentationsPeter Rugbjerg, Morten O A SommerBiotechnology for Biofuels|May 15, 2012
Evolutionary engineering strategies to enhance tolerance of xylose utilizing recombinant yeast to inhibitors derived from spruce biomassRakesh Koppram, Eva Albers, Lisbeth OlssonTrends in Biotechnology|August 5, 2008
Metabolic footprinting in microbiology: methods and applications in functional genomics and biotechnologyValeria Mapelli, Lisbeth Olsson, Jens NielsenPageof 20